Study on the property and airflow grading of Ningxia coal gasification fine slag

Ying Gao , Anning Zhou , Wei Zhao , Jing Chang , Zhen Li , Rui Han , Junzhe Wang
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引用次数: 7

Abstract

Coal gasification fine slag (FS) is a solid waste of difficult-to-separate nature. In order to improve the reuse rate of coal gasification fine slag resources, so as to improve the value-added utilization and clean transformation for coal chemical industry, which is necessary to deeply study the composition characteristics and effective separation of FS. In this study, the dry pulverized coal gasification fine slag (DPFS) was divided into different particle sizes by wet screening, and the composition and structure characteristics of components with different particle sizes were investigated. Then a combined treatment method of airflow crushing and classification was used to separate DPFS. The results showed that the fixed carbon content, the ash composition, the micro morphology and the pore structure of FS were related to the particle size distribution. The fixed carbon content of particles with particle sizes ranging between 74–98 μm was the highest (about 39.98%), the particles with a size grade of 13–74 μm and larger than 98 μm was between 11.85 and 30.85%, The minimum fixed carbon content of 0–13 μm particle size is 8.69%. The microstructure of DPFS was composed of several relatively independent particle units with special morphology, including porous irregular particles, spherical particles, floccule, and the element contents of these particle units were very different. The residual carbon and ash components in the DPFS could be effectively separated and enriched in different products by airflow crushing and classification. When the grinding gas pressure was set to 0.5 MPa, the low carbon product with fixed carbon content of 4.99% and yield of 19.86% could be obtained. The mechanism of airflow crushing of FS showed that airflow crushing based on impact force and shear force could effectively separate the residual carbon and ash components, and greatly improve the separation and recovery rate of residual carbon. Therefore, the airflow crushing and classification has a good application prospect in the separation and enrichment of residual carbon of gasification fine slag.

宁夏煤气化细渣性能及气流分级研究
煤气化细渣是一种难分离的固体废弃物。为了提高煤气化细渣资源的回用率,从而提高煤化工行业的增值利用和清洁化改造,有必要对细渣的组成特性和有效分离进行深入研究。本研究采用湿法筛选法对干粉煤气化细渣(DPFS)进行了不同粒径的分选,研究了不同粒径组分的组成及结构特征。然后采用气流破碎与分级相结合的方法对DPFS进行分离。结果表明:固定碳含量、灰分组成、微观形貌和孔隙结构与粉煤灰粒径分布有关。粒径在74 ~ 98 μm之间的颗粒的固定碳含量最高(约39.98%),13 ~ 74 μm及大于98 μm的颗粒的固定碳含量在11.85 ~ 30.85%之间,0 ~ 13 μm粒径的固定碳含量最低为8.69%。DPFS的微观结构是由多孔不规则颗粒、球形颗粒、絮状颗粒等几个相对独立的具有特殊形态的颗粒单元组成,这些颗粒单元的元素含量差异很大。通过气流破碎和分级,可以有效地分离和富集DPFS中的残碳和残灰组分。当磨矿气体压力为0.5 MPa时,可获得固定碳含量为4.99%、产率为19.86%的低碳产品。气流破碎FS的机理表明,基于冲击力和剪切力的气流破碎能有效分离残炭和灰分组分,大大提高残炭的分离和回收率。因此,气流破碎分级在气化细渣残炭的分离富集中具有良好的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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